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The Greenpower Challenge
• Our focus 3
• Siemens academic programme 5
• Project-based learning 6
• The Greenpower Challenge 7
• Siemens’ resources 11
• Key benefits of Greenpower 13
• The results 14
• Summary/next steps 20
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Our focus
Meeting the needs of Education
• Improving student attainment
• Improving student engagement
• Inspirational (motivational)
• Scalable (suitable for all learning abilities)
• Effective STEM education (cross-curricular)
• Character education
• Team-centricCharacter
Education
Integrity
Responsibility
Honesty
Inclusiveness
Respect
Cooperation
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Our focus
Meeting the needs of Industry
• Increase the number of students studying the STEM subjects
• Increase the number of students entering the engineering industries
• Workforce development
• Industry-relevant
• Practical, hands-on experience
• Use of industry-leading software and technology
• Developing key soft-skills
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Siemens academic programme: objectives
A sustainable future
• Innovation driven economies
• Increase levels of technological literacy
• Encourage and support life-long learning
Partnership with education
• Industry leading software & certification
• Support teaching & learning of the STEM subjects
• Support engaging & inspirational project-based learning
• Emphasis on applied learning
• Character education
• Workforce development
SIEMENSmainstream engineering
academic program
Industry /
academia
engagement
Certification
Industry leading
software
Curriculum
Project-based
LearningUser
community
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Project Based Learning
Used extensively in all levels of education
• Highly effective method of teaching & learning
• Encourages cross-curricular education
• Widespread industry support & coverage
Potential limitations
• Projects focused on one level of education
• Poor continuity
• Limited scalability
Secondary Education
Middle School & High SchoolPrimary
School
College &
University
Graduate &
Apprentice
teams
project A project B project C project D project E
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Greenpower Electric Car Challenge
A successful and highly-effective, international team-based academic
project where students design and build a single-seat electric car and
compete in head-to-head races
Design
• Multi-disciplinary design and engineering
• Using Siemens industry-leading software
Build
• Practical, hands-on production and assembly
• Performance testing, fault diagnosis, and development
Race
• Head-to-Head racing
• Iterative development: design-test-improve
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Greenpower Electric Car Challenge
A successful and highly-effective, international team-based academic
project where students design and build a single-seat electric car and
compete in head-to-head races
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Greenpower Electric Car Challenge
Academically proven
• STEM focused, cross-curricular and team-centric
• Emphasis on applied-learning
• Categories covering the entire range of education
• Learning continuity
• Suitable for all learning abilities
• Scalable
Strong industry support and engagement
• Siemens: Title Sponsor & Global Technology Partner
• Industry sponsors
• Industry teams
Supported by
Secondary Education
Middle School & High SchoolPrimary
School
College &
University
Graduate &
Apprentice
teams
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Greenpower categories
• Graduate & Apprentice teams
• Cars design from scratch
• Head-to-head racing
• 60 minute race (max. dist.)
• Annual race (Final)
9
11
16
25
• Kit car (fully reusable)
• Covers key areas of the STEM curriculum
• CAD: Siemens Solid Edge viewers
• Suitable for multiple groups and fully reusable
• Team working
• Kit car or design from scratch
• Covers key areas of the STEM curriculum
• CAD: Siemens Solid Edge / NX
• Head-to-head racing
• 2 x 90minute races – max distance covered)
• Qualification races & Final
• Cars typically designed from
scratch
• CAD: Siemens Solid Edge / NX
• Head-to-head racing
• 60 minute race (max. dist.)
• Qualification races & Final
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GreenpowerUSA categories
• Graduate & Apprentice teams
• Cars design from scratch
• Head-to-head racing
• 60 minute race (max. dist.)
• Annual race (Final)
9
11
18
25
14
• Kit car (fully reusable)
• Covers key areas of the STEM curriculum
• CAD: Siemens Solid Edge viewers
• Suitable for multiple groups and fully reusable
• Team working
• Cars typically designed from
scratch
• CAD: Siemens Solid Edge / NX
• Head-to-head racing
• 60 minute race (max. dist.)
• Qualification races & Final
Formula 24
• Kit car or design from scratch
• Covers key areas of the STEM curriculum
• CAD: Siemens Solid Edge / NX
Formula 24 - intermediate
• Kit car
• Covers key areas of the STEM curriculum
• CAD: Siemens Solid Edge / NX
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Supporting resources from Siemens
• Dedicated Greenpower webpage
• www.siemens.com/plm/academic/greenpower
• Siemens Engineering & Design Award
• Dedicated Solid Edge Greenpower User community
• Online Siemens Ambassador Pack
• http://docs.plm.automation.siemens.com/docs/se/ap1/en_US/ambassador/index.html
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Supporting resources from Siemens
Formula 24 kit car Solid Edge dataset Formula 24 kit car online assembly guide Introduction to surfacing
Steering wheel design project Introduction to mechanical systems Introduction to FE Analysis
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Greenpower: the key benefits
• High-quality and sustained student engagement
• Categories covering the entire range of education
• High level of female participation (~35%)
• Cross-curricular STEM project: applied learning
• Industry-leading and industry-relevant software and technology
• Running in 5 countries;
• UK (www.greenpower.co.uk)
• USA (www.greenpowerusa.net)
• China (www.greenpowerchina.com)
• Poland (http://greenpowerpolska.pl)
• South Africa (www.greenpowerza.co.za)
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Making a difference
SIEMENSSuccess stories
WHERE WILL GREENPOWER
TAKE YOU?
Click the image to access the related YouTube video.
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Key benefits for secondary education
Delivering academic value for middle schools and high schools
• Proven STEM project-based learning activity
• Truly cross-curricula
• Team-centric
• Modern and Industry-relevant
• International participation
• Inclusive: suitable for all learning abilities
• Scalable: categories for all levels of education (learning continuity)
• Large and growing range of resources
Improving student engagement and attainment
• Real-world multi-disciplinary engineering project
• inspirational and engaging project
• Applied learning
• Character education (development of key soft-skills)
• Improving employability: industry-relevant skills
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Key benefits for post-secondary education
Delivering academic value for Colleges and Universities
• Affordable
• Multiple teams from one academic institution (involve more students)
• Ongoing development of vehicle
• Cost-effective and provides project-continuity
• Head-to-head racing (multiple race events each year)
• Student teams competing against industry teams
• Modern and industry-relevant
• Practical hands-on experience
• Multi-disciplinary (suitable for a wide range of engineering courses)
• High-level of female participation (~35%)
• Perfect outreach programme
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Key benefits for industry
Industry relevant
• Modern, real-world engineering project
• Increasing the pipeline of engineering talent
• Multi-disciplinary project
• Applied learning (practical, hands-on)
• Workforce development
• Workplace skills including soft skills
• High level of female participation (~35%)
Benefits of industry involvement
• Identify and nurture talent
• Workforce development
• Industry-relevant community engagement
• Perfect for Graduate and Apprenticeship programmes
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Summary
Siemens
• Global engineering company
• Global academic programme
• Industry leading software, certification, project-based learning
and academic partnerships
• Industry-relevant project-based learning
Next steps
• Start using Siemens industry-leading technology
• Get involved in the Greenpower Challenge
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Thank you
Mike Brown
Director, Academic ProgrammesDigital Factory/mainstream engineering
SIEMENS
email:
siemens.com
@mjb258